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Evaluation of synthetic FK506 analogues as ligands for the FK506-binding proteins 51 and 52

机译:评估合成的FK506类似物作为FK506结合蛋白51和52的配体

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摘要

The FK506-binding proteins (FKBP) 51 and 52 are cochaperones that modulate the signal transduction of steroid hormone receptors. Both proteins have been implicated in prostate cancer. Furthermore, single nucleotide polymorphisms in the gene encoding FKBP51 have been associated with a variety of psychiatric disorders. Rapamycin and FK506 are two macrocyclic natural products that bind to these proteins indiscriminately but with nanomolar affinity. We here report the cocrystal structure of FKBP51 with a simplified α-ketoamide analogue derived from FK506 and the first structure-activity relationship analysis for FKBP51 and FKBP52 based on this compound. In particular, the tert-pentyl group of this ligand was systematically replaced by a cyclohexyl ring system, which more closely resembles the pyranose ring in the high-affinity ligands rapamycin and FK506. The interaction with FKBPs was found to be surprisingly tolerant to the stereochemistry of the attached cyclohexyl substituents. The molecular basis for this tolerance was elucidated by X-ray cocrystallography.
机译:FK506结合蛋白(FKBP)51和52是可调节类固醇激素受体信号转导的伴侣蛋白。两种蛋白都与前列腺癌有关。此外,编码FKBP51的基因中的单核苷酸多态性已经与多种精神疾病有关。雷帕霉素和FK506是两种大环天然产物,它们无差别地与这些蛋白质结合,但具有纳摩尔亲和力。我们在这里报告了FKBP51的共晶体结构,该结构与衍生自FK506的简化的α-酮酰胺类似物以及基于该化合物的FKBP51和FKBP52的首次构效关系分析。特别是,该配体的叔戊基系统地被环己基环系统取代,该环己基环系统更类似于高亲和力配体雷帕霉素和FK506中的吡喃糖环。发现与FKBP的相互作用令人惊奇地耐受所连接的环己基取代基的立体化学。通过X射线共结晶阐明了该耐受性的分子基础。

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